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Biomedical subjects

H Takakuwa

Publications and source records attributed to H Takakuwa.

At least 19 recordsLinked to original sources

Oncolytic viral therapy using a spontaneously generated herpes simplex virus type 1 variant for disseminated peritoneal tumor in immunocompetent mice.

The present study demonstrates that a clonal derivative (HF10) of HSV-1 strain HF effectively treated disseminated peritoneal neoplasm in an immunocompetent animal model and that all of survived mice acquired resistance to rechallenge with tumor cells. The survival time of mice treated with HF10 was longer than that of mice treated with hrR3, indicating that the oncolytic effect of HF10 was more potent than that of hrR3 in this animal model. HF10 induces syncytia formation in vitro, whereas hrR3 forms rounded CPE. The sequential administration of HF10 gave a long term survival of more than 90 days after tumor injection, with no signs of disease, in 8 of the 9 treated mice. The results suggest that treatment of disseminated peritoneal tumor with HF10 induces a specific antitumor immune response. Genomic structure determination showed that HF10 has a deletion of 3.9-kilobase pair (kbp) in the right end of UL and UL/IRL junction, resulting in the loss of UL 56 expression. A 2.3 kbp deletion and extensive rearrangement were also observed in the left end of the genome.

Animals↗

The US11 gene product of herpes simplex virus has intercellular trafficking activity.

The US11 gene product of herpes simplex virus is an abundant virion structural protein with RNA-binding regulatory activity. Its carboxyl-terminal half consists of tandem tripeptide repeats of the sequence RXP. We demonstrate that the US11 protein has intercellular trafficking activity and accumulates in the nucleolus when singly expressed in cultured cells, and that the RXP repeats are responsible for this activity. These same properties were also observed in cells expressing a fusion protein linking US11 to the green fluorescent protein. Furthermore, exogenous US11 protein was internalized by cells at 4 degrees C, which suggests that US11 protein uptake occurs primarily through an energy-independent pathway.

Amino Acid Sequence↗

The US2 gene product of herpes simplex virus type 2 interacts with cytokeratin 18.

In order to clarify the biological role of US2 gene product of herpes simplex virus type 2 (HSV-2), a HeLa cDNA library was screened in the yeast two-hybrid system using US2 protein as bait, and several interacting proteins were identified, including cytokeratin 18. US2 protein was co-immunoprecipitated with cytokeratin 18 from HSV-2 infected cell lysates. Analysis of infected orA431 cells by immunofluorescence showed that US2 protein gave filamentous or dot-like cytoplasmic staining pattern, and that it co-localized with cytokeratin 18. When US2 protein was expressed alone, it co-localized with cytokeratin 18. To define the domain interacting with cytokeratin 18, deletion mutant proteins were constructed and cells transfected with mutants were analyzed by indirect immunofluorescence. These results suggest that the N-terminal half of the US2 protein, especially the region containing amino acids 42-77, is important for interaction with cytokeratin 18.

Animals↗

Identification and characterization of the UL24 gene product of herpes simplex virus type 2.

The UL24 gene of herpes simplex virus type 2 (HSV-2) is predicted to encode a 281 amino acid protein with a molecular mass of 30.5 kDa. In this study, the HSV-2 UL24 gene product has been identified by using a rabbit polyclonal antiserum produced against a recombinant protein containing the full-length UL24 gene product of HSV-2 fused to glutathione-S-transferase. The antiserum reacted specifically with a 32 kDa protein in HSV-2 186-infected Vero cells and with 31 and 32 kDa proteins in UL24-expressing Cos-7 cells. Accumulation of UL24 protein to detectable levels required viral DNA synthesis, indicating that the protein was regulated as a late gene. UL24 protein was found to be associated with purified HSV-2 virions and C capsids. Indirect immunofluorescence analysis demonstrated that the UL24-specific fluorescence was detected in perinuclear regions of the cytoplasm and/or in the nucleus as small discrete granules from 9h post infection (hpi). Furthermore, the UL24 protein expressed singly was detected predominantly in the nucleus and slightly in the cytoplasm at 24 h after transfection, with branch-like cytoplasmic protruding structures. Strong nucleolus staining was visible in partial cells.

Animals↗

A chimeric CYP11B1/CYP11B2 gene in glucocorticoid-insuppressible familial hyperaldosteronism.

Although a chimeric gene combining the 11beta-hydroxylase gene (CYP11B1) and the aldosterone synthase gene (CYP11B2) explains the pathophysiology of familial hyperaldosteronism (FH) type I, the contribution of this abnormality to FH type II has not been tested. We screened genomic DNA from a Japanese family with FH type II for the CYP11B1/CYP11B2 gene. The index patient was a 27-year-old woman with hypertension. Hypokalaemia, elevated plasma aldosterone and suppressed plasma renin activity suggested primary aldosteronism. Though computed tomography failed to reveal an adrenal tumour, left adrenalectomy was indicated due to a high aldosterone concentration in left adrenal venous blood. The resected adrenal gland contained an adenoma. As her mother had also been diagnosed with primary aldosteronism due to an adenoma, we administered oral dexamethasone to our patient before the operation and observed the response of the blood pressure and plasma aldosterone concentration for 2 weeks. Both parameters remained elevated during the treatment period, confirming the diagnosis of FH type II. Total DNA was isolated from blood cells of the index patient, her mother, and an unaffected brother. Samples were amplified by polymerase chain reaction using specific primers from CYP11B1 and CYP11B2. Unique DNA fragments of 1.4 kb were obtained from the index patient and her mother, but not from the healthy subject. The CYP11B1/CYP11B2 chimeric gene was found in a Japanese family with FH type II.

Adult↗

Herpes simplex virus encodes a virion-associated protein which promotes long cellular processes in over-expressing cells.

BACKGROUND: Herpes simplex virus (HSV) possesses a number of accessory genes which are dispensable for replication in cell culture. A previous study showed that the UL21 gene product of HSV type 1 is a virion component that is not necessary for viral replication. The function of the gene product remains unknown. RESULTS: We found that the HSV-1 UL21 gene product, a capsid-associated tegument protein with an apparent molecular mass of 62 kDa, promotes the outgrowth of long cellular processes when it is over-expressed in non-neural cells. The UL21 protein co-localizes and physically associates with microtubules in the long processes. Analysis using mutant proteins implicates a proline-rich region in promotion of the processes. CONCLUSIONS: The results suggest that the UL21 protein, like tau and other MAPs, promotes the process by directly or indirectly interacting with microtubules and facilitates the intracellular transport of the virus.

Amino Acid Sequence↗

Therapeutic effects on intestinal Behçet's disease of an intravenous drug delivery system using dexamethasone incorporated in lipid emulsion.

Recurrent intestinal ulcer is a frequent problem in the management of Behçet's disease. However, no standard therapy for intestinal Beheçt's disease has been established. We report two patients with intestinal Behçet disease and recurrent ileal ulcers who were treated successfuly with a lipid emulsion of dexamethasone. In one patient, the cecal ulcer did not relapse after the intravenous administration initiation of a lipid emulsion of dexamethasone once a week, despite the discontinuation of prednisolone. In the other patient, the cecal ulcer showed a healing tendency, and oral administration of prednisolone was reduced from 40 to 15 mg/day after intravenous administration of a lipid emulsion of dexamethasone. Both patients experienced no complications associated with the administration of the emulsion. These results suggest that an intravenous drug delivery system using a lipid emulsion of dexamethasone is useful for treatment of intestinal Behçet's disease.

Anti-Inflammatory Agents↗